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Mathematical model for a radioactive marker in silicide formation

机译:硅化物形成中放射性标记物的数学模型

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A mathematical model is constructed to interpret the profiles of radioactive 31Si tracers in a computer simulation proposed by R. Pretorius and A. P. Botha [Thin Solid Films 91, 99 (1982)]. This model assumes that only Si moves in the silicide, that the Si moves interstitially and convectively, and that the moving Si can exchange sites with the stationary Si in the silicide lattice. An analytical solution of this model is given and confirms the published computer simulation data. However, it is shown that the model is physically inadequate. Solutions of another model which assumes that metal, instead of Si, is the moving species for silicide formation (either interstitially, or substitutionally, or both), with self‐diffusion of 31Si in the silicide during silicide formation. Almost all the experimental data can be fitted by solutions of both models. These examples demonstrate that radioactive tracer experiments alone are insufficient to determine the moving species when a solid binary compound film forms by reaction of adjacent elemental layers. Both inert marker and tracer data are needed to identify the moving species and the mechanisms.
机译:在R. Pretorius和A.P. Botha提出的计算机模拟中,构造了一个数学模型来解释放射性31Si示踪剂的剖面[Thin Solid Films 91,99(1982)]。该模型假设只有硅在硅化物中移动,硅在间隙中和对流移动,并且移动的硅可以与硅化物晶格中的静止硅交换位点。给出了该模型的解析解,并确认了已发布的计算机仿真数据。但是,结果表明该模型在物理上是不合适的。另一个模型的解决方案假设金属(而不是Si)是硅化物形成的移动物种(间隙地,替代地或两者兼有),并且在硅化物形成过程中硅化物中有31Si自扩散。两种模型的解决方案几乎都能拟合所有实验数据。这些例子表明,当通过相邻元素层的反应形成固体二元化合物膜时,仅靠放射性示踪剂实验不足以确定移动的物质。惰性标记物和示踪剂数据都需要用来识别运动物种和机制。

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    《Journal of Applied Physics》 |1984年第12期|P.4187-4193|共7页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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